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Relation between beam driven seed current and rotation in a steady state field reversed configuration

M. Okamoto, H.L. Berk, J.H. Hammer1989年Nuclear FusionIF 3出版社

The rotation induced in a beam driven, steady state field reversed configuration is investigated for cases with or without multipole magnetic fields. When no magnetic field is present, the back-current can be inhibited by the Ohkawa effect if the charge number of the beam is less than the effective charge number of the background ions. However, the resulting rotation of the plasma often leads to instabilities. For systems with a large bootstrap effect, the rotation can be moderate, but it is then difficult to contain the fusion products. An additional problem is that the Ohkawa effect due to alpha particles tends to destroy the equilibrium. Previously, it was shown that the presence of a quadrupole field inhibits the formation of a back-current. It is shown that a steady state flux can be maintained with a moderate input power, with the resulting rotation being slow enough so that the conditions of stability are given. The study has been performed for reactor grade and experimental parameters. Means to supply a continuous source of particles and additional energy will have to be devised.

日本語訳

ビーム駆動・定常状態の磁場反転配位において誘起される回転を、多重極磁場がある場合とない場合について調べた。磁場が存在しない場合、ビームの電荷数が背景イオンの実効電荷数よりも小さければ、大川効果によって逆電流を抑制できる。しかしながら、その結果生じるプラズマの回転は、しばしば不安定性を引き起こす。大きなブートストラップ効果を持つ系では、回転は穏やかであり得るが、その場合、核融合生成物を閉じ込めることは困難である。さらなる問題として、アルファ粒子による大川効果が平衡を破壊する傾向があることが挙げられる。以前に、四重極磁場の存在が逆電流の形成を抑制することが示された。適度な入力電力で定常状態の磁束を維持でき、その結果生じる回転が十分に遅いため、安定性の条件が満たされることが示される。この研究は、炉級および実験パラメータに対して行われた。粒子の連続供給源と追加エネルギーを供給する手段を考案する必要があるだろう。

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Steady stateField-Reversed Configuration
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